|Table of Contents|

Polyploid Induction of Physalis pubescens L.by Seed Soaking

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2021年07
Page:
38-43
Research Field:
Publishing date:

Info

Title:
Polyploid Induction of Physalis pubescens L.by Seed Soaking
Author(s):
SUN Changjun1LONG Xueyan12CHENG Zhihao1SUN Peiguang1WU Qiong1WANG Xianzhi2
(1.Haikou Experimental Station,Chinese Academy of Tropical Agricultural Sciences/Hainan Key Laboratory of Genetic Improvement of Bananas,Haikou,Hainan 570102;2.School of Agriculture,Yunnan University,Kunming,Yunnan 650091)
Keywords:
Physalis pubescens L.polyploidy inductionflow cytometry
PACS:
-
DOI:
10.11937/bfyy.20202913
Abstract:
Taking the germinated seeds of Physalis pubescens L.as materials.A seed soak experment was conducted to evaluate the effects of concentrations and treat time of colchicine on phenotypic variation and death rate of Physalis pubescens L.,in order to optimize the polyploidy induction system of Physalis pubescens L..The results showed that the hypocotyl enlargment rate increased followed the increase of concentration and treat time of colchicine,but decreased at long treatment time (36 hours).The size of stomatal cell of induced plants was increased but the density was decreased,the chromosome number of induced plants was 2n=4x=48,while that of diploids was 2n=2x=24.The sensitivity of Physalis pubescens L.varieties to colchicine were different,‘Tiebaqing’ was more sensitive to colchicine,the optimal treatment conditions were germinated seeds soaked in 100 mg?L-1 colchicine for 12 hours,the phenotypic variation rate at 30 days were 8.67%;‘Dahuang’ and ‘Lilitian’ were less sensitive to colchicine,the optimal treatment conditions were germinated seeds soaked in 200 mg?L-1 colchicine for 12 hours,the phenotypic variation rate at 30 days were 6.33% and 6.67%.Many mutant strains were identied to be mixed ploidy by flow cytometry,flow cytometry could accurately identify the ploidy of mutant strains in the early stage,and reduce the impact of mixed ploidy in breeding.

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Last Update: 2021-06-10