Language:
English
繁體中文
Help
回圖書館首頁
手機版館藏查詢
Login
Back
Switch To:
Labeled
|
MARC Mode
|
ISBD
Novel Approaches to Weed Management:...
~
Wu, Wenzhuo.
Linked to FindBook
Google Book
Amazon
博客來
Novel Approaches to Weed Management: Exploiting Breeding System Handicaps in Dioecious Species With a Focus on Palmer Amaranth (Amaranthus palmeri).
Record Type:
Electronic resources : Monograph/item
Title/Author:
Novel Approaches to Weed Management: Exploiting Breeding System Handicaps in Dioecious Species With a Focus on Palmer Amaranth (Amaranthus palmeri)./
Author:
Wu, Wenzhuo.
Published:
Ann Arbor : ProQuest Dissertations & Theses, : 2024,
Description:
105 p.
Notes:
Source: Dissertations Abstracts International, Volume: 86-02, Section: B.
Contained By:
Dissertations Abstracts International86-02B.
Subject:
Horticulture. -
Online resource:
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=31237542
ISBN:
9798383607954
Novel Approaches to Weed Management: Exploiting Breeding System Handicaps in Dioecious Species With a Focus on Palmer Amaranth (Amaranthus palmeri).
Wu, Wenzhuo.
Novel Approaches to Weed Management: Exploiting Breeding System Handicaps in Dioecious Species With a Focus on Palmer Amaranth (Amaranthus palmeri).
- Ann Arbor : ProQuest Dissertations & Theses, 2024 - 105 p.
Source: Dissertations Abstracts International, Volume: 86-02, Section: B.
Thesis (Ph.D.)--University of California, Davis, 2024.
The success of the Insect Sterile Technique (IST) in managing insect pests raised the hypothesis that a similar approach could be employed to control weed populations. This research delved into the potential of using irradiated sterile pollen to disrupt seed production in dioecious weeds, with a focus on Palmer amaranth (Amaranthus palmeri S. Watson). The overall objective this project is to understand the reproductive biology of dioecious weeds and to examine the possibility of using sterile pollen to disrupt seed production in dioecious weeds. In Chapter 1, we characterized phases of flower development in A. palmeri and compared organogenesis of flower development in female and male plants. Understanding the reproductive biology of this species is crucial for guiding the development of novel weed management strategies, as it enables the identification of specific vulnerabilities that can be targeted to disrupt seed production. Results showed the distinction between the two flower types became apparent at stage four by the formation of stamen primordia in staminate flowers, which developed both the female and male reproductive organs initially, as contrasted to pistillate flowers which produced carpel primordia only. Our study suggests that the evolution of A. palmeri from a cosexual ancestral to complete dioecy is still in progress. Chapter 2 examined the optimal irradiation dose to reduce seed production in A. palmeri. An irradiation dose of 300 Gy seems to be the most effective in reducing seed set in Palmer amaranth. Furthermore, the greatest reduction in seed set was achieved when irradiated pollen was introduced to the stigma through artificial pollination prior to open pollination. It appears that irradiated pollen exerts a preventive effect on naturally occurring pollen that arrives later. Furthermore, in order to increase the efficiency of SPT applications, Chapter 3 focused on investigating an ideal dry (inert) diluent and a most effective mix ratio of pollen/diluent and identifying the optimal strategy of sterile pollen applications to minimize seed production in Palmer amaranth. The findings showed that the optimal formulation was a 25%/75% mixture of irradiated pollen and talc powder by volume, successfully reducing seed set in A. palmeri while efficiently utilizing the limited resource of irradiated pollen. The most effective application strategy was initiating the application 7 days after anthesis and repeating it three times at 7-day intervals. This study also addressed the potential trade-off between inflorescence growth and fertilization rate, hypothesizing that high fertilization could divert resources away from inflorescence development to seed production. We found massive pollination of irradiated pollen or non-irradiated pollen did not have an effect on inflorescence growth, but it did on the sex ratio in the progeny population, resulting in female-biased progeny as predicted by certation theory.
ISBN: 9798383607954Subjects--Topical Terms:
555447
Horticulture.
Subjects--Index Terms:
Amaranthaceae
Novel Approaches to Weed Management: Exploiting Breeding System Handicaps in Dioecious Species With a Focus on Palmer Amaranth (Amaranthus palmeri).
LDR
:04235nmm a2200397 4500
001
2403475
005
20241118085745.5
006
m o d
007
cr#unu||||||||
008
251215s2024 ||||||||||||||||| ||eng d
020
$a
9798383607954
035
$a
(MiAaPQ)AAI31237542
035
$a
AAI31237542
040
$a
MiAaPQ
$c
MiAaPQ
100
1
$a
Wu, Wenzhuo.
$3
3773748
245
1 0
$a
Novel Approaches to Weed Management: Exploiting Breeding System Handicaps in Dioecious Species With a Focus on Palmer Amaranth (Amaranthus palmeri).
260
1
$a
Ann Arbor :
$b
ProQuest Dissertations & Theses,
$c
2024
300
$a
105 p.
500
$a
Source: Dissertations Abstracts International, Volume: 86-02, Section: B.
500
$a
Advisor: Jernstedt, Judy.
502
$a
Thesis (Ph.D.)--University of California, Davis, 2024.
520
$a
The success of the Insect Sterile Technique (IST) in managing insect pests raised the hypothesis that a similar approach could be employed to control weed populations. This research delved into the potential of using irradiated sterile pollen to disrupt seed production in dioecious weeds, with a focus on Palmer amaranth (Amaranthus palmeri S. Watson). The overall objective this project is to understand the reproductive biology of dioecious weeds and to examine the possibility of using sterile pollen to disrupt seed production in dioecious weeds. In Chapter 1, we characterized phases of flower development in A. palmeri and compared organogenesis of flower development in female and male plants. Understanding the reproductive biology of this species is crucial for guiding the development of novel weed management strategies, as it enables the identification of specific vulnerabilities that can be targeted to disrupt seed production. Results showed the distinction between the two flower types became apparent at stage four by the formation of stamen primordia in staminate flowers, which developed both the female and male reproductive organs initially, as contrasted to pistillate flowers which produced carpel primordia only. Our study suggests that the evolution of A. palmeri from a cosexual ancestral to complete dioecy is still in progress. Chapter 2 examined the optimal irradiation dose to reduce seed production in A. palmeri. An irradiation dose of 300 Gy seems to be the most effective in reducing seed set in Palmer amaranth. Furthermore, the greatest reduction in seed set was achieved when irradiated pollen was introduced to the stigma through artificial pollination prior to open pollination. It appears that irradiated pollen exerts a preventive effect on naturally occurring pollen that arrives later. Furthermore, in order to increase the efficiency of SPT applications, Chapter 3 focused on investigating an ideal dry (inert) diluent and a most effective mix ratio of pollen/diluent and identifying the optimal strategy of sterile pollen applications to minimize seed production in Palmer amaranth. The findings showed that the optimal formulation was a 25%/75% mixture of irradiated pollen and talc powder by volume, successfully reducing seed set in A. palmeri while efficiently utilizing the limited resource of irradiated pollen. The most effective application strategy was initiating the application 7 days after anthesis and repeating it three times at 7-day intervals. This study also addressed the potential trade-off between inflorescence growth and fertilization rate, hypothesizing that high fertilization could divert resources away from inflorescence development to seed production. We found massive pollination of irradiated pollen or non-irradiated pollen did not have an effect on inflorescence growth, but it did on the sex ratio in the progeny population, resulting in female-biased progeny as predicted by certation theory.
590
$a
School code: 0029.
650
4
$a
Horticulture.
$3
555447
650
4
$a
Ecology.
$3
516476
650
4
$a
Plant sciences.
$3
3173832
650
4
$a
Evolution & development.
$3
3172418
653
$a
Amaranthaceae
653
$a
Mating systems
653
$a
Plant reproductive biology
653
$a
Weed science
653
$a
Insect Sterile Techniques
690
$a
0471
690
$a
0412
690
$a
0479
690
$a
0329
710
2
$a
University of California, Davis.
$b
Political Science.
$3
1270082
773
0
$t
Dissertations Abstracts International
$g
86-02B.
790
$a
0029
791
$a
Ph.D.
792
$a
2024
793
$a
English
856
4 0
$u
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=31237542
based on 0 review(s)
Location:
ALL
電子資源
Year:
Volume Number:
Items
1 records • Pages 1 •
1
Inventory Number
Location Name
Item Class
Material type
Call number
Usage Class
Loan Status
No. of reservations
Opac note
Attachments
W9511795
電子資源
11.線上閱覽_V
電子書
EB
一般使用(Normal)
On shelf
0
1 records • Pages 1 •
1
Multimedia
Reviews
Add a review
and share your thoughts with other readers
Export
pickup library
Processing
...
Change password
Login